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Characteristics of Color Development in Seeds of Brown- and Yellow-Seeded Heading Chinese Cabbage and Molecular Analysis of Brsc the Candidate Gene Controlling Seed Coat Color

机译:大白菜种的发色特性及控制种皮颜色候选基因Brsc的分子分析

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摘要

The proanthocyanidin (PA) is the main flavonoids which affect the seed coat color in Brassica species. In this paper, characteristics of color development and accumulation of flavonoids were analyzed in the seeds of brown-seeded (B147) and yellow-seeded (B80) heading Chinese cabbage (Brassica rapa L. ssp. Pekinensis). It is found that the content of phenolic compounds in B147 were significantly more than that of B80 by using dimethylaminocinnamaldehyde (DMACA) staining and toluidine blue O (TBO) staining. In previous studies, the locus associated with seed coat color has been mapped. The results of whole genome re-sequencing showed that there are large fragment deletions variation in the mapping region between the brown-seeded parent ‘92S105’ and the yellow-seeded parent ‘91-125.’ Based on the B. rapa genome annotation information, the TRANSPARENT TESTA GLABRA 1 (TTG1), is likely to be the candidate gene controlling seed coat color. A 94-base deletion was found in the 96th base downstream of the initiation codon in the TTG1 of yellow seed, thus, the termination codon TGA was occurred in the 297th base which makes the full length of TTG1 of yellow seed is 300 bp. Based on the differential sequences of TTG1 of brown and yellow seed, a functional marker, Brsc-yettg1, was developed to detect the variation of TTG1. Quantitative real-time PCR analysis of BrTTG1 in different tissues showed that expression levels of BrTTG1 was not tissue-specific. During the whole seed development period, the expression of BrTTG1 in B147 was higher than that of B80. The expression levels of four structural genes, BrDFR, BrANS, BrANR1, and BrANR2 in B147 were also higher than those in B80. The co-segregation molecular markers obtained in this report and TTG1 related information provide a basis for further understanding of the molecular mechanism of seed coat color in heading Chinese cabbage.
机译:原花青素(PA)是影响芸苔属种皮颜色的主要类黄酮。本文分析了大白菜(Brassica rapa L. ssp。Pekinensis)的棕色种子(B147)和黄色种子(B80)种子的颜色发育和类黄酮积累的特征。通过二甲基氨基肉桂醛(DMACA)染色和甲苯胺蓝O(TBO)染色发现B147中的酚类化合物含量明显高于B80。在先前的研究中,已经绘制了与种皮颜色相关的基因座。全基因组重新测序的结果表明,基于B. rapa基因组注释信息,棕色种子亲本“ 92S105”和黄色种子亲本“ 91-125”之间的定位区域存在较大的片段缺失变异。透明TESTA GLABRA 1(TTG1)可能是控制种皮颜色的候选基因。在黄色种子的TTG1的起始密码子的第96个碱基的下游发现一个94个碱基的缺失,因此,在第297个碱基中出现了终止密码子TGA,这使得黄色种子的TTG1的全长为300 bp。基于棕色和黄色种子的TTG1的差异序列,开发了功能标记Brsc-yettg1,以检测TTG1的变异。 BrTTG1在不同组织中的实时定量PCR分析表明,BrTTG1的表达水平不是组织特异性的。在整个种子发育期间,B147中的BrTTG1表达高于B80。 B147中四个结构基因BrDFR,BrANS,BrANR1和BrANR2的表达水平也高于B80。本报告中获得的共分离分子标记和TTG1相关信息为进一步了解大白菜种皮颜色的分子机制提供了基础。

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